NSR Query Results
Output year order : Descending NSR database version of May 3, 2024. Search: Author = P.Box Found 12 matches. 2000GO05 Eur.Phys.J. A 7, 245 (2000) D.Gourio, D.Ardouin, M.Assenard, G.Auger, Ch.O.Bacri, N.Bellaize, A.Benkirane, J.Benlliure, B.Berthier, E.Bisquer, B.Borderie, R.Bougault, P.Box, R.Brou, J.L.Charvet, A.Chbihi, J.Colin, D.Cussol, R.Dayras, E.De Filippo, A.Demeyer, C.Donnet, D.Durand, P.Ecomard, P.Eudes, M.Germain, D.Guinet, L.Lakehal-Ayat, P.Lautesse, J.L.Laville, L.Lebreton, C.Le Brun, J.F.Lecolley, T.Lefort, A.Lefevre, R.Legrain, N.Le Neindre, O.Lopez, M.Louvel, N.Marie, V.Metivier, L.Nalpas, A.Ouatizerga, M.Parlog, J.Peter, E.Plagnol, E.Pollacco, A.Rahmani, R.Regimbart, T.Reposeur, M.F.Rivet, E.Rosato, F.Saint-Laurent, S.Salou, M.Squalli, J.C.Steckmeyer, G.Tabacaru, B.Tamain, L.Tassan-Got, E.Vient, C.Volant, J.P.Wieleczko, A.Wieloch, K.Yuasa-Nakagawa Emission Time Scale of Light Particles in the System Xe + Sn at 50 AMeV. A Probe for Dynamical Emission ? NUCLEAR REACTIONS Sn(129Xe, X), E=50 MeV/nucleon; measured charged particles spectra, (particle)(particle)-coin, deuteron and proton energy distributions, p-p, p-d and d-d correlations gated by centrality of collision; deduced emission time scale. 4π INDRA detector.
doi: 10.1007/PL00013604
1997BO05 Z.Phys. A357, 7 (1997) B.Borderie, M.F.Rivet, P.Box, M.Dakowski, C.Cabot, Y.El Masri, F.Hanappe, D.Gardes, D.Jouan, G.Mamane, X.Tarrago, H.Utsunomiya Energy Relaxation Time in Heavy Ion Collisions between 27 and 44 MeV/u NUCLEAR REACTIONS Ag(40Ar, X), E=27, 44 MeV/nucleon; measured (fragment)(fragment)-coin, excitation energy sharing; deduced energy relaxation time. Landau-Vlasov simulations.
doi: 10.1007/s002180050206
1997BO41 Z.Phys. A359, 391 (1997) T.M.V.Bootsma, G.J.van Nieuwenhuizen, P.F.Box, R.Kamermans, P.G.Kuijer, C.T.A.M.de Laat, C.J.W.Twenhofel, P.Decowski, K.A.Griffioen Evaporation Residue Cross Sections for 40Ca + 48Ti at 25.0 and 33.9 MeV Per Nucleon NUCLEAR REACTIONS 48Ti(40Ca, X), E=25.0, 33.9 MeV/nucleon; measured light, heavy residues σ(E, Z, θ), multiplicities; deduced reaction mechanism.
doi: 10.1007/s002180050419
1995BA64 Phys.Lett. 353B, 27 (1995) Ch.O.Bacri, B.Borderie, J.L.Charvet, D.Cussol, R.Dayras, O.Lopez, A.Ouatizerga, M.F.Rivet, G.Auger, A.Benkirane, J.Benlliure, B.Berthier, R.Bougault, R.Brou, P.Box, Y.Cassagnou, A.Chbihi, J.Colin, E.De Filippo, A.Demeyer, D.Durand, P.Ecomard, P.Eudes, A.Genoux-Lubain, D.Gourio, D.Guinet, L.Lakehal-Ayat, P.Lautesse, J.L.Laville, L.Lebreton, C.Lebrun, J.F.Lecolley, A.Le Fevre, R.Legrain, M.Louvel, M.Mahi, N.Marie, V.Mitivier, L.Nalpas, T.Nakagawa, M.Parlog, J.Peter, E.Plagnol, E.Pollacco, A.Rahmani, R.Regimbart, T.Reposeur, E.Rosato, F.Saint-Laurent, M.Squalli, J.C.Steckmeyer, B.Tamain, L.Tassan-Got, E.Vient, C.Volant, J.P.Wieleczko, A.Wieloch, K.Yuasa-Nakagawa Onset of Vaporization for the Ar + Ni System NUCLEAR REACTIONS 58Ni(36Ar, X), E=32-95 MeV/nucleon; measured charged particle multiplicity vs total Z; deduced system vaporization properties.
doi: 10.1016/0370-2693(95)00551-U
1995PO17 Nucl.Instrum.Methods Phys.Res. A357, 418 (1995) J.Pouthas, B.Borderie, R.Dayras, E.Plagnol, M.F.Rivet, F.Saint-Laurent, J.C.Steckmeyer, G.Auger, C.O.Bacri, S.Barbey, A.Barbier, A.Benkirane, J.Benlliure, B.Berthier, E.Bougamont, P.Bourgault, P.Box, R.Bzyl, B.Cahan, Y.Cassagnou, D.Charlet, J.L.Charvet, A.Chbihi, T.Clerc, N.Copinet, D.Cussol, M.Engrand, J.M.Gautier, Y.Huguet, O.Jouniaux, J.L.Laville, P.Le Botlan, A.Leconte, R.Legrain, P.Lelong, M.Le Guay, L.Martina, C.Mazur, P.Mosrin, L.Olivier, J.P.Passerieux, S.Pierre, B.Piquet, E.Plaige, E.C.Pollacco, B.Raine, A.Richard, J.Ropert, C.Spitaels, L.Stab, D.Sznajderman, L.Tassan-Got, J.Tillier, M.Tripon, P.Vallerand, C.Volant, P.Volkov, J.P.Wieleczko, G.Wittwer INDRA, a 4π Charged Product Detection Array at GANIL NUCLEAR REACTIONS 58Ni(36Ar, X), E=32-95 MeV/nucleon; Sn(129Xe, X), E=25-50 MeV/nucleon; measured charged particle multiplicity distributions. 4π charged product detector array INDRA.
doi: 10.1016/0168-9002(94)01543-0
1994BO25 Phys.Rev. C50, 934 (1994) P.F.Box, K.A.Griffioen, P.Decowski, T.Bootsma, E.Gierlik, G.J.van Nieuwenhuizen, C.Twenhofel, R.Kamermans, H.W.Wilschut, A.Giorni, C.Morand, A.Demeyer, D.Guinet Inclusive Systematics for 28Si + 28Si Reactions between 20 and 35 MeV per Nucleon NUCLEAR REACTIONS 28Si(28Si, X), E=22-35 MeV/nucleon; measured fragment inclusive σ(θ) vs velocity; deduced fusion is followed by evaporation, preequilibrium emission increase with E.
doi: 10.1103/PhysRevC.50.934
1992DE33 Phys.Rev. C46, 667 (1992) P.Decowski, E.Gierlik, P.F.Box, K.A.Griffioen, R.J.Meijer, G.J.van Nieuwenhuizen, H.W.Wilschut, A.Giorni, C.Morand, A.Demeyer, D.Guinet Mutual Inelastic Excitation in the 28Si + 28Si Reaction at 19.7 and 30 MeV/Nucleon NUCLEAR REACTIONS 28Si(28Si, X), E=19.7, 30 MeV/nucleon; measured fragment velocity spectra, σ(fragment θ, Z) vs velocity; deduced reaction mechanism. Mean field DWBA analysis, Q-optimum model.
doi: 10.1103/PhysRevC.46.667
1991ME10 Phys.Rev. C44, 2625 (1991) R.J.Meijer, P.F.Box, P.Decowski, E.Gierlik, R.Kamermans, G.J.van Nieuwenhuizen, K.A.Griffioen, H.W.Wilschut, A.Giorni, C.Morand, A.Demeyer, D.Guinet Fusion of 28Si Nuclei at 12.4, 19.7, and 30.0 MeV/Nucleon NUCLEAR REACTIONS 28Si(28Si, X), E=12.4-30 MeV/nucleon; measured (evaporation residue)α-, (evaporation residue)p-coin, σ(fragment θ, Eα, θα), σ(fragment θ, Ep, θp), fragment velocity spectra; deduced σ(evaporation residue) vs charge, projectile energy, reaction dynamics.
doi: 10.1103/PhysRevC.44.2625
1990GR03 Phys.Lett. 237B, 24 (1990) K.A.Griffioen, R.J.Meijer, P.F.Box, P.Decowski, G.J.van Nieuwenhuizen, R.Kamermans, H.W.Wilschut, A.Giorni, C.Morand, A.Demeyer, D.Guinet Limiting Excitation Energy in the Reaction Si + Si NUCLEAR REACTIONS Si(Si, pX), (Si, αX), E=12.4-30 MeV/nucleon; measured σ(fragment θ, Ep, θp), σ(fragment θ, Eα, θα); deduced evaporation limiting excitation energy.
doi: 10.1016/0370-2693(90)90454-E
1990TW01 Nucl.Instrum.Methods Phys.Res. B51, 58 (1990) C.J.W.Twenhofel, P.F.Box, P.Schotanus, T.M.V.Bootsma, G.J.van Nieuwenhuizen, P.Decowski, R.Kamermans The Response Function of a CsI(Tl) Scintillator with Photodiode Readout to Light and Heavy Ions in the Intermediate Energy Range NUCLEAR REACTIONS 28Si(28Si, X), E=22-35 MeV/nucleon; measured detector response vs fragment Z, E. CsI(Tl) crystal, photodiode readout.
doi: 10.1016/0168-583X(90)90539-7
1988DE27 Phys.Rev. C37, 2495 (1988) P.Decowski, E.A.Bakkum, P.F.Box, K.A.Griffioen, R.Kamermans, R.J.Meijer Strongly Dissipative Processes in the 28Si + (nat)Si Reaction at 12.4 MeV/Nucleon NUCLEAR REACTIONS 28Si(28Si, X), E=12.4 MeV/nucleon; measured fragment velocities; deduced reaction mechanism.
doi: 10.1103/PhysRevC.37.2495
1987DE16 Z.Phys. A327, 235 (1987) P.Decowski, E.A.Bakkum, P.Box, K.A.Griffioen, R.Kamermans, R.J.Meijer Dissipative Processes at Forward Angles in the 28Si + (nat)Si Reaction at 12.4 MeV/Nucleon NUCLEAR REACTIONS Si(28Si, X), E=12.4 MeV/nucleon; measured Z=12-19 residues velocity spectra, σ; deduced reaction mechanism. Tof, ΔE-E detection system.
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